首页> 外文期刊>Plant Disease >Resistance to Crown and Root Rot Caused by Phytophthora capsici in a Tomato Advanced Backcross of Solanum habrochaites and Solatium lycopersicum
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Resistance to Crown and Root Rot Caused by Phytophthora capsici in a Tomato Advanced Backcross of Solanum habrochaites and Solatium lycopersicum

机译:番茄疫病回交和番茄番茄回交对辣椒疫霉的冠冠和根腐病的抗性

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摘要

Phytophthora capsici causes devastating disease on many vegetable crops, including tomato and other solanaceous species. Solanum habro-chaites accession LA407, a wild relative of cultivated tomato, has shown complete resistance to four P. capsici isolates from Michigan cucurbita-ceous and solanaceous crops in a previous study. Greenhouse experiments were conducted to evaluate 62 lines of a tomato inbred backcross population between LA407 and the cultivated tomato 'Hunt 100' and 'Peto 95-43' for resistance to two highly virulent P. capsici isolates. Roots of 6-week-old seedlings were inoculated with each of two P. capsici isolates and maintained in the greenhouse. Plants were evaluated for wilting and plantdeath three times per week for 5 weeks. Significant differences were observed in disease response among the inbred tomato lines. Most lines evaluated were susceptible to P. capsici isolate 12889 but resistant to isolate OP97; 24 tomato lines were resistant to both isolates. Heritability of Phytophthora root rot resistance was high in this population. Polymorphic molecular markers located in genes related to resistance and defense responses were identified and added to a genetic map previously generatedfor the population. Resistant lines and polymorphic markers identified in this study are a valuable resource for development of tomato varieties resistant to P. capsici.
机译:辣椒疫霉菌对许多蔬菜作物造成毁灭性疾病,包括番茄和其他茄科物种。在以前的研究中,茄子茄子的茄属茄属野生种近亲茄属植物LA407已显示出对密歇根州葫芦科和茄科作物的四种辣椒疫霉菌的完全抗性。进行了温室实验,以评估LA407与栽培番茄'Hunt 100'和'Peto 95-43'之间的62个番茄自交回交种群对两种高毒力辣椒衣原体的抗性。用两个辣椒辣椒分离株分别接种6周龄幼苗的根,并保存在温室中。每周对植物进行3次萎和植株死亡评估,共5周。自交系番茄之间在疾病反应方面观察到显着差异。评估的大多数品系均对辣椒疫霉菌分离株12889敏感,但对分离株OP97具有抗性。 24个番茄品系均对两种分离物均具有抗性。在该种群中疫霉根腐病抗性的遗传力很高。鉴定出位于与抗性和防御反应相关的基因中的多态性分子标记,并将其添加到先前为种群生成的遗传图谱中。在这项研究中确定的抗性品系和多态性标记是开发抗辣椒辣椒番茄品种的宝贵资源。

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